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							- # StarPU --- Runtime system for heterogeneous multicore architectures.
 
- #
 
- # Copyright (C) 2014-2020  Université de Bordeaux, CNRS (LaBRI UMR 5800), Inria
 
- # Copyright (C) 2014       Université Joseph Fourier
 
- #
 
- # StarPU is free software; you can redistribute it and/or modify
 
- # it under the terms of the GNU Lesser General Public License as published by
 
- # the Free Software Foundation; either version 2.1 of the License, or (at
 
- # your option) any later version.
 
- #
 
- # StarPU is distributed in the hope that it will be useful, but
 
- # WITHOUT ANY WARRANTY; without even the implied warranty of
 
- # MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
 
- #
 
- # See the GNU Lesser General Public License in COPYING.LGPL for more details.
 
- #
 
- # R script that is giving statistical analysis of the paje trace
 
- # Can be called from the command line with:
 
- # Rscript $this_script $range1 $range2 $name $outputfile $inputfiles
 
- # Package containing ddply function
 
- library(plyr)
 
- library(ggplot2)
 
- library(data.table)
 
- # Function for reading .csv file
 
- read_df <- function(file,range1,range2) {
 
-   df<-read.csv(file, header=FALSE, strip.white=TRUE)
 
-   names(df) <- c("Nature","ResourceId","Type","Start","End","Duration", "Depth", "Value")
 
-   df = df[!(names(df) %in% c("Nature","Type", "Depth"))]
 
-   df$Origin<-file
 
- # Changing names if needed:
 
-   df$Value <- as.character(df$Value)
 
-   df$Value <- ifelse(df$Value == "F", "Freeing", as.character(df$Value))
 
-   df$Value <- ifelse(df$Value == "A", "Allocating", as.character(df$Value))
 
-   df$Value <- ifelse(df$Value == "W", "WritingBack", as.character(df$Value))
 
-   df$Value <- ifelse(df$Value == "No", "Nothing", as.character(df$Value))
 
-   df$Value <- ifelse(df$Value == "I", "Initializing", as.character(df$Value))
 
-   df$Value <- ifelse(df$Value == "D", "Deinitializing", as.character(df$Value))
 
-   df$Value <- ifelse(df$Value == "Fi", "FetchingInput", as.character(df$Value))
 
-   df$Value <- ifelse(df$Value == "Po", "PushingOutput", as.character(df$Value))
 
-   df$Value <- ifelse(df$Value == "C", "Callback", as.character(df$Value))
 
-   df$Value <- ifelse(df$Value == "B", "Overhead", as.character(df$Value))
 
-   df$Value <- ifelse(df$Value == "Sl", "Sleeping", as.character(df$Value))
 
-   df$Value <- ifelse(df$Value == "P", "Progressing", as.character(df$Value))
 
-   df$Value <- ifelse(df$Value == "U", "Unpartitioning", as.character(df$Value))
 
-   df$Value <- ifelse(df$Value == "Ar", "AllocatingReuse", as.character(df$Value))
 
-   df$Value <- ifelse(df$Value == "R", "Reclaiming", as.character(df$Value))
 
-   df$Value <- ifelse(df$Value == "Co", "DriverCopy", as.character(df$Value))
 
-   df$Value <- ifelse(df$Value == "CoA", "DriverCopyAsync", as.character(df$Value))
 
- # Considering only the states with a given name
 
-   if (name != "All")
 
-     df<-df[df$Value %in% name[[1]],]
 
-   
 
- # Aligning to begin time from 0
 
-   m <- min(df$Start)
 
-   df$Start <- df$Start - m
 
-   df$End <- df$Start+df$Duration
 
- # Taking only the states inside a given range
 
-   df <- df[df$Start>=range1 & df$End<=range2,]
 
- # Return data frame
 
-   df
 
- }
 
- #########################################
 
- #########################################
 
- # Main
 
- #########################################
 
- # Reading command line arguments
 
- args <- commandArgs(trailingOnly = TRUE)
 
- range1<-as.numeric(args[1])
 
- if (range1==-1)
 
-   range1<-Inf
 
- range2<-as.numeric(args[2])
 
- if (range2==-1)
 
-   range2<-Inf
 
- name<-strsplit(args[3], ",")
 
- # Reading first file
 
- filename<-args[4]
 
- df<-read_df(filename,range1,range2)
 
- i=5
 
- while (i <= length(args))
 
-   {
 
- # Reading next input file
 
-     filename<-args[i]
 
-     dft<-read_df(filename,range1,range2)
 
-     df<-rbindlist(list(df,dft))
 
-     
 
-     i <- i+1
 
-   }
 
- # Error: if there is no results for a given range and state
 
- if (nrow(df)==0)
 
-   stop("Result is empty!")
 
- # Plotting histograms
 
- plot <- ggplot(df, aes(x=Duration)) + geom_histogram(aes(y=..count.., fill=..count..),binwidth = diff(range(df$Duration))/30)
 
- plot <- plot + theme_bw()  + scale_fill_gradient(high = "#132B43", low = "#56B1F7") + ggtitle("Histograms for state distribution") + ylab("Count") + xlab("Time [ms]") + theme(legend.position="none") + facet_grid(Origin~Value,scales = "free_y")
 
- # Adding text for total duration
 
- ad<-ggplot_build(plot)$data[[1]]
 
- al<-ggplot_build(plot)$panel$layout
 
- ad<-merge(ad,al)
 
- anno1 <- ddply(ad, .(ROW), summarise, x = max(x)*0.7, y = max(y)*0.9)
 
- anno1<-merge(anno1,al)
 
- anno2 <- ddply(df, .(Origin,Value), summarise, tot=as.integer(sum(Duration)))
 
- anno2$PANEL <- row.names(anno2)
 
- anno2$lab <- sprintf("Total duration: \n%ims",anno2$tot)
 
- anno <- merge(anno1,anno2)
 
- plot <- plot + geom_text(data = anno, aes(x=x, y=y, label=lab, colour="red"))
 
- # Printing plot
 
- plot
 
- # End
 
- write("Done producing a histogram plot. Open Rplots.pdf located in this folder to see the results", stdout())
 
 
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